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Enhancement of proteasome activity by a small-molecule inhibitor of USP14LEE, Byung-Hoon; MIN JAE LEE; WILSON, Scott M et al.Nature (London). 2010, Vol 467, Num 7312, pp 179-184, issn 0028-0836, 6 p.Article

CONSEQUENCES OF THE DYT1 MUTATION ON torsinA OLIGOMERIZATION AND DEGRADATIONGORDON, K. L; GONZALEZ-ALEGRE, P.Neuroscience. 2008, Vol 157, Num 3, pp 588-595, issn 0306-4522, 8 p.Article

Protéasomes et inhibiteurs de protéasomes = Proteasoma and proteasoma inhibitorsMEUNIER, L; STOEBNER, P.-E; MARQUE, M et al.Annales de dermatologie et de vénéréologie. 2005, Vol 132, Num 11, pp 895-898, issn 0151-9638, 4 p., CAH1Article

Recognition and delivery of ERAD substrates to the proteasome and alternative paths for cell survivalMCCRACKEN, A. A; BRODSKY, J. L.Current Topics in Microbiology and Immunology. 2005, Vol 300, pp 17-40, issn 0070-217X, 24 p.Article

Inhibition du protéasome : données précliniquesMOREAU, Philippe.Hématologie (Montrouge). 2004, Vol 10, pp 3-8, issn 1264-7527, 6 p., NS3Conference Paper

The clinical potential of proteasome inhibitionANDERSON, Kenneth C.European journal of cancer. Supplement (1990). 2004, Vol 2, Num 6, pp 3-6, issn 1359-6349, 4 p.Conference Paper

Archaeal proteasomes : Proteolytic nanocompartments of the cellMAUPIN-FURLOW, Julie A; KACZOWKA, Steven J; OU, Mark S et al.Advances in applied microbiology. 2001, Vol 50, pp 279-338, issn 0065-2164Article

JmjN interacts with JmjC to ensure selective proteolysis of Gis1 by the proteasomeZHENZHEN QUAN; OLIVER, Stephen G; NIANSHU ZHANG et al.Microbiology (Reading). 2011, Vol 157, pp 2694-2701, issn 1350-0872, 8 p., 9Article

Das Proteasom und seine Bedeutung für den Alterungsprozess = The proteasome and its function in the aging processSTOLZING, A; GRUNE, T.H + G. Zeitschrift für Hautkrankheiten. 2001, Vol 76, Num 10, pp 604-609, issn 0301-0481Article

Complete subunit architecture of the proteasome regulatory particleLANDER, Gabriel C; ESTRIN, Eric; MATYSKIELA, Mary E et al.Nature (London). 2012, Vol 482, Num 7384, pp 186-191, issn 0028-0836, 6 p.Article

Degradation of TDP-43 and its pathogenic form by autophagy and the ubiquitin-proteasome systemXIAOJU WANG; HUADONG FAN; ZHENG YING et al.Neuroscience letters. 2010, Vol 469, Num 1, pp 112-116, issn 0304-3940, 5 p.Article

Extended polyglutamine repeats trigger a feedback loop involving the mitochondrial complex III, the proteasome and huntingtin aggregatesFUKUI, Hirokazu; MORAES, Carlos T.Human molecular genetics (Print). 2007, Vol 16, Num 7, pp 783-797, issn 0964-6906, 15 p.Article

CHIP and HSPs interact with β-APP in a proteasome-dependent manner and influence Aβ metabolismKUMAR, Pravir; AMBASTA, Rashmi K; VEERESHWARAYYA, Vimal et al.Human molecular genetics (Print). 2007, Vol 16, Num 7, pp 848-864, issn 0964-6906, 17 p.Article

Differential regulation of proteasome activity in the nucleus and the synaptic terminalsUPADHYA, Sudarshan C; LAN DING; SMITH, Thuy K et al.Neurochemistry international. 2006, Vol 48, Num 4, pp 296-305, issn 0197-0186, 10 p.Article

Down-regulation of the 26S proteasome subunit RPN9 inhibits viral systemic transport and alters plant vascular developmentHAILING JIN; SONGTAO LI; VILLEGAS, Andy et al.Plant physiology (Bethesda). 2006, Vol 142, Num 2, pp 651-661, issn 0032-0889, 11 p.Article

The proteasomeDALTON, William S.Seminars in oncology. 2004, Vol 31, Num 6, pp 3-9, issn 0093-7754, 7 p., SUP16Article

Adenovirus E4orf3 Targets Transcriptional Intermediary Factor 1γ for Proteasome-Dependent Degradation during InfectionFORRESTER, Natalie A; PATEL, Rakesh N; DOBNER, Thomas et al.Journal of virology. 2012, Vol 86, Num 6, pp 3167-3179, issn 0022-538X, 13 p.Article

Inhibition of lysosomal functions reduces proteasomal activityLIYAN QIAO; JIANHUA ZHANG.Neuroscience letters. 2009, Vol 456, Num 1, pp 15-19, issn 0304-3940, 5 p.Article

Disruption of the basal body compromises proteasomal function and perturbs intracellular wnt responseGERDES, Jantje M; YANGFAN LIU; BADANO, Jose L et al.Nature genetics. 2007, Vol 39, Num 11, pp 1350-1360, issn 1061-4036, 11 p.Article

Could inhibition of the proteasome cause mad cow disease?HOOPER, Nigel M.Trends in biotechnology (Regular ed.). 2003, Vol 21, Num 4, pp 144-145, issn 0167-7799, 2 p.Article

Molecular Pathways: Targeting Proteasomal Protein Degradation in CancerMOLINEAUX, Susan M.Clinical cancer research (Print). 2012, Vol 18, Num 1, pp 15-20, issn 1078-0432, 6 p.Article

Inhibiting the ubiquitin―proteasome system leads to preferential accumulation of toxic N-terminal mutant huntingtin fragmentsXIANG LI; WANG, Chuan-En; SHANSHAN HUANG et al.Human molecular genetics (Print). 2010, Vol 19, Num 12, pp 2445-2455, issn 0964-6906, 11 p.Article

The ubiquitin/26S proteasome system in plant-pathogen interactions: a never-ending hide-and-seek gameDIELEN, Anne-Sophie; BADAOUI, Saloua; CANDRESSE, Thierry et al.Molecular plant pathology. 2010, Vol 11, Num 2, pp 293-308, issn 1464-6722, 16 p.Article

Targeting the ubiquitin-proteasome system for cancer therapyYILI YANG; KITAGAKI, Jirouta; HONGHE WANG et al.Cancer science. 2009, Vol 100, Num 1, pp 24-28, issn 1347-9032, 5 p.Article

Zinc-binding domain of rotavirus NSP1 is required for proteasome-dependent degradation of IRF3 and autoregulatory NSP1 stabilityGRAFF, Joel W; EWEN, Julie; ETTAYEBI, Khalil et al.Journal of general virology. 2007, Vol 88, pp 613-620, issn 0022-1317, 8 p., 2Article

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